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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Size and shape of the distant magnetotail
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Size and shape of the distant magnetotail

机译:大小和形状的遥远的磁尾

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We employ a global magnetohydrodynamic model to study the effects of the interplanetary magnetic field (IMF) strength and direction upon the cross section of the magnetotail at lunar distances. The anisotropic pressure of drapedmagnetosheath magnetic field lines and the inclusion of a reconnection-generated standing slow mode wave fan bounded by a rotational discontinuity within the definition of the magnetotail result in cross sections elongated in the direction parallel to the component of the IMF in the plane perpendicular to the Sun-Earth line. Tilted cross-tail plasma sheets separate the northern and southern lobes within these cross sections. Greater fast-mode speeds perpendicular than parallel to the draped magnetosheath magnetic field lines result in greater distances to the bow shock in the direction perpendicular than parallel to the component of the IMF in the plane transverse to the Sun-Earth line. The magnetotail cross section responds rapidly to variations in the IMF orientation. The rotational discontinuity associated with newly reconnectedmagnetic field lines requires no more than the magnetosheath convection time to appear at any distance downstream, and further adjustments of the cross section in response to the anisotropic pressures of the draped magnetic field lines require no more than 10–20 min. Consequently, for typical ecliptic IMF orientations and strengths, the magnetotail cross section is oblate, while the bow shock is prolate.
机译:我们使用全球磁流体动力模型研究行星际磁场的影响字段(IMF)强度和方向在十字架上部分磁尾的月球距离。各向异性drapedmagnetosheath的压力磁场线和包容的reconnection-generated站慢波模式风扇有界的旋转内不连续磁尾的定义导致交叉部分拉长的方向平行国际货币基金组织的组件在平面上垂直于来观察太阳-地球。cross-tail等离子体片单独的北部在这些截面和南部叶。快速模式垂直速度大于平行于挂磁鞘磁电场线导致更大的距离弓形激波的方向垂直平行于IMF的组件在平面上横向来观察太阳-地球。截面响应迅速的变化国际货币基金组织取向。用新reconnectedmagnetic字段相关联行不需要比磁鞘对流时间出现在任何距离十字架的下游,进一步调整部分的各向异性压力挂着的磁场线不需要超过10 - 20分钟。因此,为典型黄道IMF方向和优势,磁尾横截面是扁的,而弓形激波是扩展的。

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